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ID,question_id,question_text,student_answer,label
1,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,if that switch is with the path between that bulb and the battery,
2,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,"the switch, the bulb, and the battery have to be contained in the closed path.",
3,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,the path plays an important role,
4,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,uh-huh,
5,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,switch is contained in a circuit,
6,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,whether there is a closed path with a battery,
7,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,The path cannot be open,
8,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,The bulb must be contained in a closed path with the battery,
9,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,a bulb must be in a closed path with a battery and a switch for the switch to affect the bulb,
10,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,the switch being on or off determines whether the bulb is contained in a closed path with the battery or not,
11,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,a switch has to be contained in a closed path with no gaps,
12,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,if the switch is on?,
13,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,It plays a significant role. If a switch is open it may or may not interfere with a closed path which is essential to light the bulb,
14,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,An path with a switch connecting to a battery must be closed,
15,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,They must be in the same path to affect the bulb.,
16,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,a switch affects thebulb if it lies along a path that could create a closed circuit,
17,PARALLEL_SWITCH_EXPLAIN_Q3,What role does the path play in determining whether or not a switch affects a bulb?,It must be closed,
18,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,there is a gap,
19,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,A bulb creates a gap between itself and the battery terminal,
20,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,give me a hint,
21,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,There is no voltage between the two terminals,
22,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,they are in different states,
23,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,they are not connected,
24,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,they are connected.,
25,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,the bulb terminal and the battery terminal are connected,
26,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,the terminal is connected to the negative voltage terminal,
27,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,tell me the answer,
28,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,there is no difference between the elactrical states and also that there is a gap in the curcuit,
29,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,the terminals are separated by a gap and the battery terminal and bulb terminal are on the same side of the gap,
30,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,there is a damaged bulb,
31,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,There is a short circuit between the connection of the bulb terminal and a battery terminal.,
32,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,That the bulb is connected to the positive end of the terminal,
33,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,that they are connected, no gap
34,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,They share an electrical state.,
35,VOLTAGE_DIFF_DISCUSS_1_Q,What does a voltage reading of 0 tell you about the connection between a bulb terminal and a battery terminal?,The two terminals are in the same electrical state.,
36,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,the positive battery terminal is connected to terminal six,
37,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,Terminal 6 is only connected to the positive terminal.,
38,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,bulb C does not work,
39,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,The positive battery terminal is separated by a gap from terminal 6,
40,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,there is no gap between terminal 6 and the positive terminal.,
41,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,A terminal is connected to the positive battery terminal.,
42,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,the terminals are connected,
43,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,The positive terminal is not separated by a gap from terminal 6,
44,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,The positive battery terminal is not seperated from terminal 6.,
45,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,i dont know,
46,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,The positive battery terminal was not separated by a gap from terminal 6.,
47,BULB_C_VOLTAGE_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,the 2 are connected,
48,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,because they are connected to the negative terminal,
49,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,"1, 2, and 3 have 0 volts. The negative battery terminal has 0 volts.",
50,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,"1, 2, and 3 show 0 volts.",
51,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,because they are not connected to the positive terminal.,
52,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,Because there is a gap caused by damaged bulb B.,
53,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,they are zero,
54,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,a terminal is connected to the negative,
55,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,they are on the other side of the positive terminal,
56,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,1 2 and 3 are on the negative side,
57,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,The path is not closed.,
58,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,a connected to negative,
59,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,They are closest to each other,
60,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,yes,
61,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,Because the other side of the terminal is 1.5 volts.,
62,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,because the path in the circuit to the positive battery terminal is disrupted by bulb B,
63,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,Because they all read as not receiving electricity from the negative terminal.,
64,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,There is a gap between the negative and positive due to Blub B,
65,TERMINAL_STATE_EXPLAIN_Q,Why do you think those terminals and the negative battery terminal are in the same state?,"because their voltages are 0, indicating there is no difference between the states",
66,BULB_ONLY_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 1 and terminal 4.,terminal 1 and 4 are connected to the negtive terminal of the battery,
67,PARALLEL_SWITCH_EXPLAIN_Q2,Why was bulb C off when switch Z was open?,bulb c was in an open path with the battery,
68,PARALLEL_SWITCH_EXPLAIN_Q2,Why was bulb C off when switch Z was open?,bulb c is not contained in a closed path with the battery,
69,PARALLEL_SWITCH_EXPLAIN_Q2,Why was bulb C off when switch Z was open?,bulb c was not in a closed path with the battery.,
70,PARALLEL_SWITCH_EXPLAIN_Q2,Why was bulb C off when switch Z was open?,path for bulb c was open,
71,PARALLEL_SWITCH_EXPLAIN_Q2,Why was bulb C off when switch Z was open?,switch z makes the path incomplete,
72,PARALLEL_SWITCH_EXPLAIN_Q2,Why was bulb C off when switch Z was open?,bulb c is still contained in a closed path with the battery,
73,PARALLEL_SWITCH_EXPLAIN_Q2,Why was bulb C off when switch Z was open?,bulb c is contained in the path to the battery,
74,PARALLEL_SWITCH_EXPLAIN_Q2,Why was bulb C off when switch Z was open?,it was not in a closed path with the battery,
75,PARALLEL_SWITCH_EXPLAIN_Q2,Why was bulb C off when switch Z was open?,idk,
76,PARALLEL_SWITCH_EXPLAIN_Q2,Why was bulb C off when switch Z was open?,"Because bulb C is contained in an opened path with the battery, which turns it off.",
77,BULB_ONLY_EXPLAIN_WHY6,Explain why you got a voltage reading of 1.5 for terminal 1 and terminal 6.,terminal 6 is conncected to the positive terminal of the battery and terminal 1 is connected to the negative terminal of the battery,
78,BULB_ONLY_EXPLAIN_WHY6,Explain why you got a voltage reading of 1.5 for terminal 1 and terminal 6.,terminal 6 is not connected to the negative terminal,
79,BULB_ONLY_EXPLAIN_WHY6,Explain why you got a voltage reading of 1.5 for terminal 1 and terminal 6.,there is a separation between them,
80,BULB_ONLY_EXPLAIN_WHY6,Explain why you got a voltage reading of 1.5 for terminal 1 and terminal 6.,Terminal 1 is not connected to terminal 1,
81,BULB_ONLY_EXPLAIN_WHY6,Explain why you got a voltage reading of 1.5 for terminal 1 and terminal 6.,"they are not connected, there is a gap",
82,BULB_ONLY_EXPLAIN_WHY6,Explain why you got a voltage reading of 1.5 for terminal 1 and terminal 6.,Terminal 1 is connected to terminal 6.,
83,BULB_ONLY_EXPLAIN_WHY6,Explain why you got a voltage reading of 1.5 for terminal 1 and terminal 6.,Terminal 1 and terminal 6 are separated by a gap.,
84,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.",Because electrical states will be greater if there is a gap in the circuit,
85,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.",measuring voltage allows you to locate the gap in a connection,
86,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.","it allows you to measure electrical states within a connection, or find a gap in the connection",
87,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.",There is a difference in the electrical state at the location of the gap in the circuit.,
88,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.",The electrical state is non-zero.,
89,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.",it shows the chemical reaction of the battery to the telectrical state of the terminal,
90,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.",voltage shows the chemical reactions of where the ap is,
91,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.",burnt bulbs have no voltage at one of their terminals.,
92,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.",Measurimg the voltage allows you to see where there is a gap in the electrical states,
93,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.","Voltage measures the difference between the electrical states at two terminals. If there is a gap in the connection between the terminals, then a meter will measure a voltage.",
94,BURNED_BULB_LOCATE_EXPLAIN_Q,"Why does measuring voltage help you locate a burned out bulb? Try to answer in terms of electrical states, connections and/ or a gap.","When a light bulb is burned out in a closed path, all the light blubs go out. Voltage helps you to find where there is a gap in the path, which indicated a damaged bulb.",
95,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,because it had a closed path,
96,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,Because the circuit was closed,
97,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,because bulb a was in a closed path.,
98,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,Bulb A was still in a closed path,
99,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,Bulb A is still connected to the battery in a closed path.,
100,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,it had a closed path,
101,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,Swtich Y is not on the same path as bulb A.,
102,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,The path was closed.,
103,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,"Bulb A is contained in a closed path,",
104,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,bulb a was in a closed circuit with the battery.,
105,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,There was still a closed circuit,
106,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,because Bulb a is in a closed circuit with the battery and switch z,
107,PARALLEL_SWITCH_EXPLAIN_Q1,Why was bulb A on when switch Y was open and switch Z was closed?,Switch Z was the only one in the same path as bulb A,
108,HYBRID_BURNED_OUT_EXPLAIN_Q3,Explain your reasoning.,bulb a and bulb b are still in a closed path with the battery.,
109,HYBRID_BURNED_OUT_EXPLAIN_Q3,Explain your reasoning.,can still be in a closed path with the battery,
110,HYBRID_BURNED_OUT_EXPLAIN_Q3,Explain your reasoning.,closed pathway with the battery,
111,HYBRID_BURNED_OUT_EXPLAIN_Q3,Explain your reasoning.,seperate circuits,
112,HYBRID_BURNED_OUT_EXPLAIN_Q3,Explain your reasoning.,Bulbs A and B are still contained in a closed path to the battery.,
113,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",It is on a complete path with the battery,
114,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",because it was contained in a closed path to the battery.,
115,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",The battery is conatined in the same path as the bulb.,
116,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",there was a gap in therefdjkjreajfjhkldec,
117,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",Bulb a was in a closed path with a battery.,
118,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",bulb a and switch z are contained in a closed path with a battery,
119,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",it does not affect bulb a. switch x does affect bulb a. switch x was closed,
120,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",it was on a closed path and connected to the battery,
121,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",Bulb A is in the path of switch x.,
122,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",Bulb A was in a closed circuit.,
123,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?","Because it""s path was closed.",
124,SWITCH_TABLE_EXPLAIN_Q1,"When switch X was closed and switch Y was open, why was bulb A on?",Bulb A was on because the path was closed from bulb A to the battery.,
125,BULB_C_VOLTAGE_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,The positive battery terminal is separated by a gap from terminal 1,
126,BULB_C_VOLTAGE_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,terminal one was positive,
127,BULB_C_VOLTAGE_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,terminal 1 is positive,
128,BULB_C_VOLTAGE_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,i have absolutely no idea,
129,BULB_C_VOLTAGE_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,the terminal is separated from the positive battery terminal.,
130,BULB_C_VOLTAGE_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,because the positive terminal is separated by a gap from terminal 1,
131,BULB_C_VOLTAGE_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,They are connected to the negative charge,
132,BULB_C_VOLTAGE_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,Because the terminals are not connected to each other,
133,BULB_C_VOLTAGE_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,no idea,
134,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,terminal 1 and terminal 2 are connected to the negative battery terminal,
135,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,because they are both connected to the negative battery terminal,
136,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,because there is a gap,
137,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,there is a gap between the positive terminal and the bulb,
138,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,because terminal 1 is directly connected to terminal 2,
139,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,terminal 1 is connected to,
140,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,there was no gap between terminal 1 and terminal 2,
141,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,Because the terminals are connected,
142,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,terminal 1 and 2 are connected to the negative battery,
143,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,because they are both recievining the same voltage from negative battery terminal,
144,BULB_ONLY_EXPLAIN_WHY2,Explain why you got a voltage reading of 0 for terminal 1 and terminal 2.,because there was no gap present.,
145,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,"If the bulb and the switch are contained in the same path, then the switch affects the bulb.",
146,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,when there is a closed path,
147,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,a bulb is contained in the closed path,
148,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,the switch will affect the bulb if it is on the path with the bulb to the battery,
149,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,"if a bulb is in a closed path with a battery and a switch, the switch will affect the bulb.",
150,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,"if a switch is open and the path is not closed, the bulb will be off. if the switch is closed and the path is closed, the bulb will be on.",
151,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,when the switch is in the same path as the bulb,
152,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,a switch will effect a bulb if it is in the same path as the battery,
153,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,"if the switch is open, the bulb will be off. if the switch is closed the bulb will be on.",
154,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,When a switch is on the same path as the battery and the bulb,
155,SWITCH_TABLE_EXPLAIN_Q3,Under what circumstances will a switch affect a bulb?,if it opens a gap,
156,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,A switch creates electricity,
157,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,"I don""t know.",
158,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,It causes the path to be incomplete.,
159,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,the path is open instead of closed,
160,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,it makes the path open,
161,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,because everything is connected,
162,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,it opens up the closed path,
163,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,"The electrical current can""t get to the battery",
164,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,An open switch makes a gap in the path.,
165,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,prevents the circuit from being closed and current from traveling through it,
166,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,An open switch creates a gap in the path.,
167,SWITCH_OPEN_EXPLAIN_Q,Why does an open switch impact a circuit?,"it cuts the electrical current that is needed to light up the light bulb. It needs to be connected on both sides and if one is disconnected then the bulb won""t light up.",
168,SWITCH_TABLE_EXPLAIN_Q2,"When switch X was open and switch Y was closed, why were bulbs B and C on?",bulbs b and c are contained in a closed path with the battery,
169,SWITCH_TABLE_EXPLAIN_Q2,"When switch X was open and switch Y was closed, why were bulbs B and C on?",Bulbs B and C were still in a closed path with the battery,
170,SWITCH_TABLE_EXPLAIN_Q2,"When switch X was open and switch Y was closed, why were bulbs B and C on?",Becuase the dots allowed bulb A and switch X to be bypassed and still form a closed pathway.,
171,SWITCH_TABLE_EXPLAIN_Q2,"When switch X was open and switch Y was closed, why were bulbs B and C on?",Blub B ab=nd C were still contained in a closed path with the battery,
172,BULB_C_VOLTAGE_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,positive battery terminal is separated by a gap from terminal 2,
173,BULB_C_VOLTAGE_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,terminal 2 is not connected to the positive battery terminal.,
174,BULB_C_VOLTAGE_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,because there is a gap between the positive battery terminal and bulb terminal 2.,
175,BULB_C_VOLTAGE_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,Terminal 2 is not connected to the positive terminal.,
176,BULB_C_VOLTAGE_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive terminal is seperated by a gap from terminal 2,
177,BULB_C_VOLTAGE_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The positive battery terminal is separated b a gap from terminal 2,
178,HYBRID_BURNED_OUT_EXPLAIN_Q1,Explain your reasoning.,because the paths will still be closed,
179,HYBRID_BURNED_OUT_EXPLAIN_Q1,Explain your reasoning.,they are in different paths,
180,HYBRID_BURNED_OUT_EXPLAIN_Q1,Explain your reasoning.,There is a gap in the path.,
181,HYBRID_BURNED_OUT_EXPLAIN_Q1,Explain your reasoning.,Bulbs B and C will no longer be contained in a closed path,
182,HYBRID_BURNED_OUT_EXPLAIN_Q1,Explain your reasoning.,becuase bulb a breaks the pathway for all bulbs to the battery.,
183,VOLTAGE_DIFF_DISCUSS_2_Q,What does a voltage reading of 1.5 tell you about the connection between a bulb terminal and a battery terminal?,the terminals are not connected to each other,
184,VOLTAGE_DIFF_DISCUSS_2_Q,What does a voltage reading of 1.5 tell you about the connection between a bulb terminal and a battery terminal?,the bulb is working,
185,VOLTAGE_DIFF_DISCUSS_2_Q,What does a voltage reading of 1.5 tell you about the connection between a bulb terminal and a battery terminal?,"i don""t know.",
186,VOLTAGE_DIFF_DISCUSS_2_Q,What does a voltage reading of 1.5 tell you about the connection between a bulb terminal and a battery terminal?,the terminals are separated by a gap,
187,VOLTAGE_DIFF_DISCUSS_2_Q,What does a voltage reading of 1.5 tell you about the connection between a bulb terminal and a battery terminal?,teh terminals are connected to each other,
188,VOLTAGE_DIFF_DISCUSS_2_Q,What does a voltage reading of 1.5 tell you about the connection between a bulb terminal and a battery terminal?,they are separated,
189,VOLTAGE_DIFF_DISCUSS_2_Q,What does a voltage reading of 1.5 tell you about the connection between a bulb terminal and a battery terminal?,they are not connected to eachother,
190,VOLTAGE_DIFF_DISCUSS_2_Q,What does a voltage reading of 1.5 tell you about the connection between a bulb terminal and a battery terminal?,its working,
191,VOLTAGE_DIFF_DISCUSS_2_Q,What does a voltage reading of 1.5 tell you about the connection between a bulb terminal and a battery terminal?,Both the bulb and battery terminals are connected to each other.,
192,SHORT_CIRCUIT_EXPLAIN_Q_5,Explain why circuit 5 is a short circuit.,The battery is in a closed path. The battery is not connected to a bulb.,
193,SHORT_CIRCUIT_EXPLAIN_Q_5,Explain why circuit 5 is a short circuit.,the battery is in a closed path,
194,SHORT_CIRCUIT_EXPLAIN_Q_5,Explain why circuit 5 is a short circuit.,The battery is in a closed path alone.,
195,SHORT_CIRCUIT_EXPLAIN_Q_5,Explain why circuit 5 is a short circuit.,The bulb is not contained in the circuit.,
196,SHORT_CIRCUIT_EXPLAIN_Q_5,Explain why circuit 5 is a short circuit.,bulb does not light,
197,SHORT_CIRCUIT_EXPLAIN_Q_5,Explain why circuit 5 is a short circuit.,It is a short circuit because the battery is contained in a closed path without the bulb.,
198,SHORT_CIRCUIT_EXPLAIN_Q_5,Explain why circuit 5 is a short circuit.,the battery is in a closed path without any other components,
199,SHORT_CIRCUIT_EXPLAIN_Q_5,Explain why circuit 5 is a short circuit.,bulb is outside the closed path,
200,SHORT_CIRCUIT_EXPLAIN_Q_5,Explain why circuit 5 is a short circuit.,The battery connects to a bulb.,
201,SHORT_CIRCUIT_EXPLAIN_Q_5,Explain why circuit 5 is a short circuit.,Circuit 5 is a short circuit because it is contained in a closed path and the bulb does not interfere.,
202,DAMAGED_BULB_EXPLAIN_2_Q,Why does a damaged bulb impact a circuit?,if a bulb is damaged the path is opned at that bulb,
203,DAMAGED_BULB_EXPLAIN_2_Q,Why does a damaged bulb impact a circuit?,because it creates a gap,
204,DAMAGED_BULB_EXPLAIN_2_Q,Why does a damaged bulb impact a circuit?,there is a gap in the circuit,
205,DAMAGED_BULB_EXPLAIN_2_Q,Why does a damaged bulb impact a circuit?,doesnt allow for current to run through the circuit,
206,DAMAGED_BULB_EXPLAIN_2_Q,Why does a damaged bulb impact a circuit?,It destroys the path way,
207,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,i do not know,
208,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,a positive and a negative connection.,
209,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,A light bulb must be connected to the battery.,
210,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,the correct connection is made to the proper terminal.,
211,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,the positive and negative charges of the battery must connect to the bulb,
212,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,there has to be a closed circuit,
213,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,A closed circuit.,
214,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,The battery and the light bulb must be in a closed path,
215,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,a closed path between the battery and the bulb,
216,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,"One contact connected to the + and the other attached to the -, in a closed pathway.",
217,CONDITIONS_FOR_BULB_TO_LIGHT,What are the conditions that are required to make a bulb light up?,Both the battery and the bulb must be closed.,
218,SHORT_CIRCUIT_EXPLAIN_Q_4,Explain why circuit 4 is not a short circuit.,Because the path is open,
219,SHORT_CIRCUIT_EXPLAIN_Q_4,Explain why circuit 4 is not a short circuit.,circuit 4 is a short circuit.,
220,SHORT_CIRCUIT_EXPLAIN_Q_4,Explain why circuit 4 is not a short circuit.,battery is not on a closed path,
221,SHORT_CIRCUIT_EXPLAIN_Q_4,Explain why circuit 4 is not a short circuit.,there are no closed paths,
222,SHORT_CIRCUIT_X_Q,What do you think the red X means?,Do not do this with a real battery.,
223,SHORT_CIRCUIT_X_Q,What do you think the red X means?,The battery is damaged.,
224,SHORT_CIRCUIT_X_Q,What do you think the red X means?,no charge,
225,SHORT_CIRCUIT_X_Q,What do you think the red X means?,the battery is unable to give a charge,
226,SHORT_CIRCUIT_X_Q,What do you think the red X means?,The circuit path is damaged.,
227,SHORT_CIRCUIT_X_Q,What do you think the red X means?,I think it means that the connection is incorrect.,
228,SHORT_CIRCUIT_X_Q,What do you think the red X means?,That there is a short circut,
229,SHORT_CIRCUIT_X_Q,What do you think the red X means?,damaged battery,
230,SHORT_CIRCUIT_X_Q,What do you think the red X means?,the circuit is short,
231,SHORT_CIRCUIT_X_Q,What do you think the red X means?,It has a short circuit and is not being used in the correct way.,
232,SHORT_CIRCUIT_X_Q,What do you think the red X means?,that there is a short circuit and that the battery is not hooked up properly.,
233,HYBRID_BURNED_OUT_WHY_Q3,Under what circumstances will a damaged/ burned out bulb affect another bulb?,the path is not on the same as the battery,
234,HYBRID_BURNED_OUT_WHY_Q3,Under what circumstances will a damaged/ burned out bulb affect another bulb?,if it is in the same closed path with the battery,
235,HYBRID_BURNED_OUT_WHY_Q3,Under what circumstances will a damaged/ burned out bulb affect another bulb?,if they are on the same path,
236,HYBRID_BURNED_OUT_WHY_Q3,Under what circumstances will a damaged/ burned out bulb affect another bulb?,when there is a gap in the circuit,
237,HYBRID_BURNED_OUT_WHY_Q3,Under what circumstances will a damaged/ burned out bulb affect another bulb?,IF IT CREATES A GAP IN THE PATH,
238,HYBRID_BURNED_OUT_WHY_Q2,Why do both bulbs A and B stay on when bulb C is burned out?,because bulb a and b are still contained in the closed path with the battery.,
239,HYBRID_BURNED_OUT_WHY_Q2,Why do both bulbs A and B stay on when bulb C is burned out?,contain in a closed path,
240,HYBRID_BURNED_OUT_WHY_Q2,Why do both bulbs A and B stay on when bulb C is burned out?,because bulb c is not contained in a closed path with the battery,
241,HYBRID_BURNED_OUT_WHY_Q2,Why do both bulbs A and B stay on when bulb C is burned out?,bulb a and bulb c are still contained in a closed path with the battery,
242,HYBRID_BURNED_OUT_WHY_Q2,Why do both bulbs A and B stay on when bulb C is burned out?,bulb a and bulb b are still contained in closed path with the battery,
243,HYBRID_BURNED_OUT_WHY_Q2,Why do both bulbs A and B stay on when bulb C is burned out?,They are contained in a closed path with the battery.,
244,HYBRID_BURNED_OUT_WHY_Q2,Why do both bulbs A and B stay on when bulb C is burned out?,There is still a closed path.,
245,HYBRID_BURNED_OUT_WHY_Q2,Why do both bulbs A and B stay on when bulb C is burned out?,They were still contained on closed paths to battery.,
246,HYBRID_BURNED_OUT_WHY_Q2,Why do both bulbs A and B stay on when bulb C is burned out?,because c is in parallel,
247,HYBRID_BURNED_OUT_WHY_Q2,Why do both bulbs A and B stay on when bulb C is burned out?,becuase bulbs A and B are still in a closed path.,
248,SHORT_CIRCUIT_EXPLAIN_Q_2,Explain why circuit 2 is not a short circuit.,Only one side of the battery is connected.,
249,SHORT_CIRCUIT_EXPLAIN_Q_2,Explain why circuit 2 is not a short circuit.,bulb is connected to same terminal,
250,SHORT_CIRCUIT_EXPLAIN_Q_2,Explain why circuit 2 is not a short circuit.,Because the battery is not completely connected.,
251,SHORT_CIRCUIT_EXPLAIN_Q_2,Explain why circuit 2 is not a short circuit.,the positive and negative ends of battery 2 are not connected,
252,SHORT_CIRCUIT_EXPLAIN_Q_2,Explain why circuit 2 is not a short circuit.,Circuit 2 is not a short circuit because there is a bulb.,
253,SHORT_CIRCUIT_EXPLAIN_Q_2,Explain why circuit 2 is not a short circuit.,The closed path is only contains the negative side of the battery and the bulb.,
254,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,there is a gap between terminal 1 and the positive terminal,
255,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,because i dont know,
256,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,Terminal 1 is not connected to the positive battery terminal.,
257,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,The positive terminal has a 1.5 V charge and terminal one has a 0.00 V,
258,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,There was a gap between terminal 1 and the positive terminal.,
259,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,the bulb isnt connected to the positive battery terminal,
260,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,Terminal 1 is connected to the positive terminal.,
261,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,because the meter measures the difference between the two terminals,
262,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,because terminal 1 is connected to the negative battery terminal,
263,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,"the leads of the voltmeter were reversed. therefore, the voltages were also reversed.",
264,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,because you are measuring the + current,
265,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,Because terminal 1 is connected to the negative battery terminal.,
266,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,Because the voltage of the battery on the closed circuit is the same as the batterys original voltage.,
267,VOLTAGE_GAP_EXPLAIN_WHY1,Explain why you got a voltage reading of 1.5 for terminal 1 and the positive terminal.,Because terminal 1 was connected to the negative terminal of the battery,
268,VOLTAGE_GAP_EXPLAIN_WHY3,Explain why you got a voltage reading of 1.5 for terminal 3 and the positive terminal.,there is still the same gap,
269,VOLTAGE_GAP_EXPLAIN_WHY3,Explain why you got a voltage reading of 1.5 for terminal 3 and the positive terminal.,seperated by a gap in terminal 3,
270,VOLTAGE_GAP_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,same answer as for terminal 4,
271,VOLTAGE_GAP_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,Terminal 6 is connected to the postive battery terminal,
272,VOLTAGE_GAP_EXPLAIN_WHY6,Explain why you got a voltage reading of 0 for terminal 6 and the positive terminal.,Terminal 6 and the positive battery terminal are in the same state.,
273,VOLTAGE_DEFINE_Q,What is voltage?,electricity,
274,VOLTAGE_DEFINE_Q,What is voltage?,a measurement of electricity between a positive and negative terminal,
275,VOLTAGE_DEFINE_Q,What is voltage?,the measurement of power,
276,VOLTAGE_DEFINE_Q,What is voltage?,The difference in electrical state between terminals.,
277,VOLTAGE_DEFINE_Q,What is voltage?,god,
278,VOLTAGE_DEFINE_Q,What is voltage?,the measurement of electricity,
279,VOLTAGE_DEFINE_Q,What is voltage?,tell answer,
280,VOLTAGE_DEFINE_Q,What is voltage?,The difference in electrical state,
281,VOLTAGE_DEFINE_Q,What is voltage?,the difference is electrical states,
282,VOLTAGE_DEFINE_Q,What is voltage?,The difference in the terminals of a battery.,
283,VOLTAGE_DEFINE_Q,What is voltage?,The difference between the positive and negative side,
284,VOLTAGE_DEFINE_Q,What is voltage?,Voltage is the difference between the electrical states between two terminals.,
285,VOLTAGE_DEFINE_Q,What is voltage?,The difference between the electrical states of two terminals,
286,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,"because terminals 4, 5, and 6 are connected to the positive battery terminal",
287,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,They are connected to the positive battery terminal,
288,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,Because they are connected to the positive terminal only.,
289,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,bulb b,
290,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,there terminals are separated by a gap,
291,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,"Terminal 4, terminal 5, and terminal 6 are connected to the positive battery terminal.",
292,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,"4, 5 and 6 are not connected to the negative battery terminal.",
293,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,"terminal 4, terminal 5 and terminal 6 are connected to the positive battery terminal",
294,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,They are connected to the same positive battery terminal.,
295,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,Because they are positive,
296,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,yes,
297,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,There is a gap in the circuit,
298,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,The other terminals receive current from the positive battery terminal.,
299,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,"becuase they gave a reading of 1.5 V on the multimeter, but that is just becuase the meter closed the circuit. They are really in the same state as all the others I see.",
300,OTHER_TERMINAL_STATE_EXPLAIN_Q,Why do you think the other terminals are being held in a different electrical state than that of the negative terminal?,They are connected to the postive.,
301,VOLTAGE_GAP_EXPLAIN_WHY5,Explain why you got a voltage reading of 0 for terminal 5 and the positive terminal.,the positive terminal is connected to terminal 5,
302,VOLTAGE_GAP_EXPLAIN_WHY5,Explain why you got a voltage reading of 0 for terminal 5 and the positive terminal.,terminal 5 and the positive terminal are connected.,
303,VOLTAGE_GAP_EXPLAIN_WHY5,Explain why you got a voltage reading of 0 for terminal 5 and the positive terminal.,same answer as for terminal 4 and the positive terminal,
304,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,there is no gap between terminal 4 and the positive terminal,
305,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,there is a gap between the positive battery terminal and terminal 4.,
306,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,the terminal is conntected to postive end of battery,
307,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,the terminals are blocked by a gap,
308,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,there is no difference in the two terminals. they are in a closed path,
309,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,I dont know,
310,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,seperted by gap in terminal 4,
311,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,BECAUSE IT WAS ATTACHED TO THE NEGATIVE TERMINAL.,
312,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,terminal 4 is connected only to the positive battery terminal,
313,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,the positive battery terminal is connected in circuit with terminal 4,
314,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,terminal 4 is not connected to the negative terminal because of a gap in bulb b.,
315,VOLTAGE_GAP_EXPLAIN_WHY4,Explain why you got a voltage reading of 0 for terminal 4 and the positive terminal.,The positive battery terminal was not separated by a gap from terminal 4.,
316,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,because the circuit does not effect the voltage,
317,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,a battery uses electricity,
318,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,The battery is not damaged,
319,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,the battery has a positive and a negative chemical reaction.,
320,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,because there is a difference in the electrical state between the two terminals,
321,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,some things never change,
322,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,"the battery still has it""s chemical reaction",
323,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,idk,
324,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,because the electrical state difference is still there,
325,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,it always has the same voltage,
326,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,the battery has an electrical state,
327,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,because voltage remains with complete and incomplete circuits. because the terminals are not connected to each other.,
328,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,because battery voltage is a constant,
329,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,there would be a greater difference,
330,VOLTAGE_INCOMPLETE_CIRCUIT_2_Q,Why?,Because the battery is filled with its own chemical reactions.,
331,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,you are stupid,
332,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,bulb A is contained in a closed path,
333,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,BULB A IS IN A DIFFERENT PATH FROM BULB B AND BULB C.,
334,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,open paths,
335,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,i give up.,
336,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,Bulb A and bulb C are contained within different closed paths,
337,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,"Bulbs A, B, and C are not contained within the same path",
338,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,it is,
339,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,because they are all in a different path,
340,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,because they are not in a closed path,
341,GIVE_CIRCUIT_TYPE_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,because the bulbs are on their own closed pathways,
342,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q3,Explain your reasoning.,conatined within the same path as the battery,
343,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q3,Explain your reasoning.,closed path,
344,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q3,Explain your reasoning.,bulbs b and c are contained in a closed path,
345,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q3,Explain your reasoning.,they are contained in the same path as each other,
346,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q3,Explain your reasoning.,they are on the same path,
347,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q3,Explain your reasoning.,because the outcome of the bulb will affect the other,
348,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q3,Explain your reasoning.,bulbs b and c are contained in the same closed path.,
349,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q3,Explain your reasoning.,Bulb B and bulb C are contained in the same closed path with the battery.,
350,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q2,Explain your reasoning.,bulbs a and c are in separate closed paths with the battery,
351,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q2,Explain your reasoning.,bulb c is contained in a closed circuit,
352,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q2,Explain your reasoning.,bulbs A and C are on different baths with the battery,
353,GIVE_CIRCUIT_TYPE_HYBRID_EXPLAIN_Q2,Explain your reasoning.,they are in different closed paths and dont effect each other,
354,OPT1_EXPLAIN_Q2,Why not?,because bulb a is in the path of switch x,
355,OPT1_EXPLAIN_Q2,Why not?,Because bulb A is in a closed path with the positive battery terminal.,
356,OPT1_EXPLAIN_Q2,Why not?,Switch Z and X needs to be closed.,
357,OPT1_EXPLAIN_Q2,Why not?,switch z can close the path for bulb a,
358,OPT1_EXPLAIN_Q2,Why not?,if switch z is closed there is a battery and bulb a contained in a closed path.,
359,OPT1_EXPLAIN_Q2,Why not?,IF Switch Z is closed then it makes a closed path with the battery,
360,OPT1_EXPLAIN_Q2,Why not?,different paths,
361,OPT1_EXPLAIN_Q2,Why not?,bulb a is in a closed path without switch y.,
362,OPT1_EXPLAIN_Q2,Why not?,because bulb a can still be contained in a closed path with the battery even if switch Y is open,
363,OPT1_EXPLAIN_Q2,Why not?,A path can be made by continuing to Bulb C and passing through switch Z,
364,BURNED_BULB_PARALLEL_EXPLAIN_Q3,Explain your reasoning.,because the terminal will be closed,
365,BURNED_BULB_PARALLEL_EXPLAIN_Q3,Explain your reasoning.,there is still a closed path,
366,BURNED_BULB_PARALLEL_EXPLAIN_Q3,Explain your reasoning.,bulb c is not in the same path as bulb a or bulb b so the gap in the path does not affect bulb a or bulb b,
367,BURNED_BULB_PARALLEL_EXPLAIN_Q3,Explain your reasoning.,bulbs a and b are still contained in a closed path with the battery.,
368,BURNED_BULB_PARALLEL_EXPLAIN_Q3,Explain your reasoning.,A and B are still in a closed circuit,
369,BURNED_BULB_PARALLEL_EXPLAIN_Q3,Explain your reasoning.,because each bulb has its own pathway,
370,BURNED_BULB_PARALLEL_EXPLAIN_Q3,Explain your reasoning.,because they will still be in a closed circuit with the battery,
371,VOLTAGE_AND_GAP_DISCUSS_Q,"As you move the multimeter leads from one bulb terminal to the next, what does it mean when the voltage reading jumps from 0 to 1.5?",there is a gap,
372,VOLTAGE_AND_GAP_DISCUSS_Q,"As you move the multimeter leads from one bulb terminal to the next, what does it mean when the voltage reading jumps from 0 to 1.5?",kjflkgjg,
373,VOLTAGE_AND_GAP_DISCUSS_Q,"As you move the multimeter leads from one bulb terminal to the next, what does it mean when the voltage reading jumps from 0 to 1.5?",the bulb prior to when the reading jumps to 1.5 is damanged,
374,VOLTAGE_AND_GAP_DISCUSS_Q,"As you move the multimeter leads from one bulb terminal to the next, what does it mean when the voltage reading jumps from 0 to 1.5?",that the terminals are connected to a battery,
375,VOLTAGE_AND_GAP_DISCUSS_Q,"As you move the multimeter leads from one bulb terminal to the next, what does it mean when the voltage reading jumps from 0 to 1.5?",There is a gap.,
376,VOLTAGE_AND_GAP_DISCUSS_Q,"As you move the multimeter leads from one bulb terminal to the next, what does it mean when the voltage reading jumps from 0 to 1.5?",The terminal is connected to a different terminal.,
377,VOLTAGE_AND_GAP_DISCUSS_Q,"As you move the multimeter leads from one bulb terminal to the next, what does it mean when the voltage reading jumps from 0 to 1.5?",that the terminal on one side is connected and the other is not connected,
378,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,"bulb a is on a closed path. bulbs b and c are on a closed circuit in series. if bulb b is damaged, then bulb c turns off. if bulb c is damaged, then bulb b turns off.",
379,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,"bulb a is on a closed circuit with the battery. if bulb b or c are damaged, neither work",
380,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,"Bulb a is on a closed path with the battery. If bulb b burns out, bulb c will no longer be on a closed path with the battery.",
381,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,Bulb B and Bulb C are in the same path.,
382,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,A is in a seperate path and B and C are in the same path,
383,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,bulb a does not affect bulbs b and c,
384,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,circuits,
385,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,"Bulb A is on one path and Bulb""s B and C are on another. Therefore if Bulb A goes out, it does not affect bulb B or C. But if Bulb""s B or C go out, both go out but A stays lit",
386,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,i dont know,
387,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,"when bulb a is out, bulb b and bulb c are still in a closed path with the battery.",
388,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,The path bulb A is on is a closed path with the battery even if bulbs B and C are out,
389,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,there are two paths. One contans bulb A alone so it does not affect the other bulbs. The other path contains both bulb B and C so if something happens to either one it will cause them to no longer be in a closed path with the battery.,
390,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,they are in separate paths,
391,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,bulb B is contained in the same closed path bulb C is in with the battery,
392,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,"There are two separate paths in this diagram. One path is made up of bulb a and the battery. The second path is bulb b, bulb c, and the battery. If bulb a is out, it will not affect bulbs b and c since they will still be contained in a closed path with the battery. If bulbs b or c are out, bulb a will not be affected because it will still be contained in a closed path with the battery. If bulb b is out, bulb c will be out too since they are in the same path with the battery.",
393,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,"bulb A is on its own path, so it doesn""t matter if B or C are damaged, A will still be on. bulbs B and C are on the same path so if one of them goes out, the other will too. B and C are not affect",
394,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,there are two seperate paths. Bulb A has its own path and bulb B and C are on the same path,
395,OPT2_EXPLAIN_Q,Describe the paths in this diagram and explain how those paths account for the results.,"bulb a is in a closed circuit path regardless of bulbs b and c. if bulb a is burned out, bulbs b and c are still in a complete circuit path. bulb b depends on bulb c, and bulb c depends on bulb b. if bulb b is damaged, bulb c will not come on becuase it is contained in the same circuit path as bulb b. if bulb c is damaged, bulb b will not come one because it is contained in the same circuit path as bulb c.",
396,BURNED_BULB_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,bulb a will be in a closed path. bulb c will be in a closed path.,
397,BURNED_BULB_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,Bulb B is in the same path,
398,BURNED_BULB_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,"There is still a closed path that contains the battery, Bulb A, and Bulb C.",
399,BURNED_BULB_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,bulbs A and C will still be on a closed path with the battery,
400,BURNED_BULB_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,different path,
401,BURNED_BULB_PARALLEL_EXPLAIN_Q2,Explain your reasoning.,Bulbs A and C will still have closed circuits with both terminals of the battery.,
402,DAMAGED_BUILD_EXPLAIN_Q,Explain your reasoning.,gap in connection,
403,DAMAGED_BUILD_EXPLAIN_Q,Explain your reasoning.,"if bulb b is damaged, there will be no path from a to c.",
404,DAMAGED_BUILD_EXPLAIN_Q,Explain your reasoning.,If bulb B is damaged it creates a gap in the path.,
405,DAMAGED_BUILD_EXPLAIN_Q,Explain your reasoning.,no path through the bulb holder= open circuit,
406,DAMAGED_BUILD_EXPLAIN_Q,Explain your reasoning.,because that would create a gap.,
407,DAMAGED_BUILD_EXPLAIN_Q,Explain your reasoning.,"In order for bulbs A and C to work properly, they also need B to work properly because they are all connected to the same battery power.",
408,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,they are in a different path of bulb a.,
409,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,bulb a is not in the same path of bulbs b and c.,
410,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,because bulbs b and c have their own closed paths,
411,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,b c are paralled to a,
412,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,"if bulb A burns out, bulb A does not make a gap in the closed path of bulb B or bulb C",
413,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,thy are in three separate paths,
414,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,Bulbs B and C will still be contained in a closed path with the battery,
415,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,Because B and C will both still be in a closed circuit,
416,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,because b and c still have a closed path,
417,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,bulbs b and c are still contained in a closed path with the battery.,
418,BURNED_BULB_PARALLEL_EXPLAIN_Q1,Explain your reasoning.,It has its own bath that is connected to the battery,
419,BURNED_BULB_PARALLEL_WHY_Q,Why didn^t bulbs A and C go out after bulb B burned out?,because yyou are retarded,
420,BURNED_BULB_PARALLEL_WHY_Q,Why didn^t bulbs A and C go out after bulb B burned out?,bulbs a and c were not in a closed path with bulb b,
421,BURNED_BULB_PARALLEL_WHY_Q,Why didn^t bulbs A and C go out after bulb B burned out?,a and c are in a closed path with the battery,
422,BURNED_BULB_PARALLEL_WHY_Q,Why didn^t bulbs A and C go out after bulb B burned out?,because they are in seperate paths,
423,BURNED_BULB_PARALLEL_WHY_Q,Why didn^t bulbs A and C go out after bulb B burned out?,because bulb b is not in the same path as the other bulbs,
424,BURNED_BULB_PARALLEL_WHY_Q,Why didn^t bulbs A and C go out after bulb B burned out?,They had a direct contained path,
425,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,Because they are on the same path.,
426,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,"Bulb A, B, and C are contained in the same path with the battery.",
427,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,The buls are contained in the same closed path. Removing one bulb will shut off the other.,
428,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,"if bulb B was damaged, bulb A and bulb C would be off",
429,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,"if one bulb was damaged, the other bulbs would be off.",
430,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,"bulbs A and C are contained in the same path. If Bulb A goes out, bulb C is affected",
431,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,removing or damaging one bulb will shut off the other bulbs.,
432,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,they are all on the same path to the battery,
433,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,they are contained in the same closed path with the battery.,
434,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,"bulb a is connected to bulb b and bulb c. if bulb a is damaged, it will affect bulbs b and c.",
435,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,when one bulb is removed or damaged it affects the other,
436,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,they will affect eachother,
437,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,because there is no other path,
438,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,"bulbs a, b, and c are all affected by one another.",
439,GIVE_CIRCUIT_TYPE_SERIES_EXPLAIN_Q,Explain your reasoning.,"If bulb A was removed, it wouldn""t affect bulb C.",
440,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,positive battery terminal is separated by a gap from terminal 4,
441,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,terminal 4 is not connected to the positive terminal,
442,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the positive battery terminal is seperated by a gap from terminal 4,
443,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the positive battery terminal is not connected to terminal 4.,
444,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,because terminal four and the positive terminal are connected,
445,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,because there is no gap between terminal four and the positive terminal,
446,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,because there is no gap,
447,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,terminal 4 is not connected to the positive battery terminal.,
448,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,The positive battery terminal is separated by a gap from terminal 4,
449,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,because there is a gap between the positive battery terminal and bulb terminal 4.,
450,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,Because there was a gap between the positive battery terminal and terminal 4.,
451,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the positive batter terminal is seperated by a gap from terminal 4,
452,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,Terminal 4 is not connected to the positive terminal.,
453,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the postive battery terminal is separated by a gap from terminal 4,
454,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,The positive battery terminal is separated by a gap from terminal 4.,
455,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,same answer as i put for the other two,
456,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,bulb c is out,
457,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,there is a gap between terminal 4 and the positive battery terminal,
458,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the positive battery terminal and terminal 4 are not connected,
459,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,terminal 4 is connected to the negative terminal and terminal 4 is seperated from the positive terminal by a gap,
460,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,terminal 4 is seperated by a gap from the positive terminal,
461,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,The terminal is not connected to the positive battery terminal.,
462,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,terminal 4 is not connected to the positive battery terminal,
463,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the positive terminal is not connected to terminal 4,
464,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,there is a gao between terminal 4 and the positive terminal.,
465,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,A terminal is not connected to the positive battery terminal.,
466,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the positive terminal and terminal 4 are seperated by a gap,
467,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the gap separates the positive battery terminal from terminal 4,
468,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the positive batter terminal is separated by a gap from terminal 4,
469,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,because the positive terminal is separated by a gap from terminal 4,
470,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,The positive battery is separated by a gap from terminal 4.,
471,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,It was separated by a gap by terminal 4,
472,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,sam reason as for terminals 1 and 2,
473,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,The positive battery is seperated by a gap from terminal two.,
474,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,seperated by a gap,
475,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,same as one,
476,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,The positive battery is separated by a gap from terminal 4,
477,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,positive battery separated by a gap in terminal 4,
478,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the positive terminal is seperated by a gap from terminal 4,
479,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,The positive battery terminal is seporated by a gap from terminal 4.,
480,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,idk,
481,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,npo idea,
482,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,"Because they aren""t damaged.",
483,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,The positive battery terminal is separated from terminal 4.,
484,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,"there""s a gap between terminal 4 and the positive battery terminal",
485,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the positive battery terminal is sepearted by a gap from terminal 4,
486,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,the positive battery terminal is seperated by a gap from terminal 4.,
487,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,separated by a gap,
488,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,The postive battery terminal is separated by a gap from terminal 4.,
489,BULB_C_VOLTAGE_EXPLAIN_WHY4,Explain why you got a voltage reading of 1.5 for terminal 4 and the positive terminal.,The positive battery terminal not seperated by a gap from terminal 4.,
490,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,because they will still be contained in a closed path with the battery,
491,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,"there is a closed path that contains the battery, bulb a, and bulb c",
492,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,not in the same path,
493,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulbs a and c will still be conained in closed paths with the battery.,
494,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulbs a and c are on a closed path with the battery,
495,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb b does not create a gap in the path of bulb a and bulb c,
496,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb b does not create a gap in the path of bulbs a and c.,
497,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb a and bulb c will light up.,
498,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulbs C and A will still be on closed paths with the battery,
499,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb b is not in the same path of bulbs a and c,
500,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Because Bulb b is not on a closed path.,
501,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,because i said so,
502,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulbs a and c will still be in a closed path with the battery,
503,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,they are in different paths,
504,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,l,
505,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,"Bulb A, Bulb C, and the battery are in a closed path.",
506,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,they are in closed paths,
507,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,there is no pathway,
508,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,h,
509,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulbs a and c have their own closed path,
510,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,closed path,
511,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulbs a and c are not in closed path with bulb b,
512,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulb A and C are on closed paths containing the battery.,
513,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,because a and c are on a closed path with the battery,
514,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb B is not contained in the same closed path with the battery,
515,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulbs A and C will still be contained in a closed path,
516,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb a is no longer contained in a closed path with the battery. bulb c is still contained in a closed path with the battery,
517,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,there is a closed path,
518,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb a will still be in a closed path with the battery. bulb c will still be in a closed path with the battery.,
519,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb a and bulb c are still in a closed path with the battery.,
520,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulbs A and C are still contained in a closed path with the battery,
521,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb b and c are still on a closed path with the battery.,
522,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb and and c are still contained in a closed path with the battery.,
523,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,there is a closed path that contains the battery and bulb a and bulb c,
524,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb a and bulb c are still contained in closed paths with the battery.,
525,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulb A and bulb C are still contained in closed paths with the battery,
526,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulb A and C are still contained in closed paths with the battery,
527,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulbs a and c will still be contained in a closed path with the battery,
528,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,It is on a separate path,
529,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,There is a closed path to the bulbs.,
530,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,it is close enought to the battery,
531,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,A and C are on their own contained path with the battery,
532,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulbs a and c are still on a closed path containing the battery,
533,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,A and C remain on a closed circuit,
534,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,They have another closed ppath to the battery,
535,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulbs A and C are still contained in closed paths to the battery,
536,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,because a and c are in series and b is in parallel,
537,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulb A and C are still contained within a closed path and connected to a battery,
538,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulb a and bulb c would be contained in a closed path with the battery,
539,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,"There will still be a closed path containin bulb A, bulb C and the battery.",
540,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,still connected to battery,
541,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,same path,
542,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,There is still a closed path for bulb A and C,
543,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,They are still in a closed pathway with the battery,
544,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,there is still a path for the 2 bulbs,
545,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulb A and C will still be in a contained path.,
546,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,seperate curcuits,
547,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,not contained inthe same path,
548,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,SEPARATE PATHS,
549,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,They are all in separate paths.,
550,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulbs A and C will still be a part of a complete circut.,
551,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,they are still conatined in a closed circuit with the battery,
552,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulbs A and C are on a separate closed path,
553,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,B would not cause a gap for either A or C,
554,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulbs a and c are both still contained in a closed path with the battery.,
555,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,because bulb a and c would still be in a complete circuit with the battery,
556,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,they have closed paths,
557,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulb A and bulb C are still contained in a closed path with the battery.,
558,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulb b is on a seperate pathway from A and C which are still connected to the battery.,
559,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,"B does not effect the paths of the other 2, they are still closed",
560,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,seperate paths connected to the battery,
561,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulbs A and C will still be contained in a closed path with the battery.,
562,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,"bulbs a and c will still be in a closed path, even if bulb B burns out.",
563,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,bulbs a and c will still have a direct path,
564,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,Bulbs A and C will be on because they still have a direct closed path to the battery.,
565,HYBRID_BURNED_OUT_EXPLAIN_Q2,Explain your reasoning.,they are still on a closed circuit with the battery,
566,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,if the voltage is not zero there is a difference in electrical states. If the voltage is zero there is no difference in electrical state,
567,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,if there is a measurement reading then the electrical states are opposite,
568,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"if the terminal is connected to the negative terminal, the reading will be 1.5V. if the terminal is connected to the positive terminal, the reading will be 0 V.",
569,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,i do not know,
570,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the electrical states are the same,
571,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the volatge readings determines how much electricity,
572,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the positive terminal has a higher electrical state than that of the negative terminal,
573,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The positive terminal has higher electrical charge that that of the negative terminal,
574,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the value of the measurement indicates its electrical capabilities,
575,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the distance between the voltage terminals.,
576,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the relationship between the voltage reading between two terminals and their electrical states is based on the distance between the terminals on the battery.,
577,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the difference between the voltage terminals.,
578,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the relationship between the voltage reading between two terminals and their elevtrical states is based on the difference between the terminals on the battery.,
579,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,it is the difference in voltage between the positive and negative terminals,
580,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the difference between positive and negative,
581,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the difference in voltage between the two terminals,
582,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,one is positive and one is negative,
583,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,0,
584,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the difference of the electrical states of the terminals is the voltage.,
585,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage reading is the difference between the electrical states of the terminal.,
586,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,Their electrical state is determined by their relationship,
587,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The electrical state of one terminal afferts the other terminal,
588,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The relationship between the electrical states of the terminals determines the voltage,
589,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The value of the measurement between two terminals gives the voltage,
590,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,whether there is a gap.,
591,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,there is a difference in electrical current at each terminal.,
592,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,dfjfkd,
593,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,slkdfkdjf,
594,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,There is a difference between the positive terminal and negative terminal.,
595,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,a gapp in the connection,
596,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,a connection difference,
597,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,yes,
598,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,there is a difference in electrical state beween the two terminals,
599,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The voltage reading is 1.5 V because their electrical states are different.,
600,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the battery that they are connected to,
601,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the difference between the batteries,
602,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the difference in the positive and negative states,
603,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,they are the same,
604,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the value of the measurements indicates that they are the same,
605,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,They have to be in different electrical states to have a voltage reading.,
606,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"If they are the same electrical state, there is no voltage.",
607,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,There is a difference in voltage when the electrical states differ.,
608,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"If there is a measurement of voltage, the electrical states are different.",
609,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The voltage reading tells the difference in electrical states between the two terminals,
610,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,voltage reading tells difference in electrical states,
611,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The voltage reading tells the difference in electrical states of two terminals,
612,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,yea?,
613,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage,
614,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,god,
615,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the power of god,
616,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,if the voltage is 0 there is no electricity,
617,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,it shows their electrical state,
618,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage reading and their electrical state are the same,
619,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,voltage,
620,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the positive and negative ends of the battery,
621,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the value of the measurement indicates voltage,
622,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,if they are connected or not connected.,
623,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,whether there is a gap between two terminals or not.,
624,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the measurement indicated whether the terminals are connected.,
625,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,If the terminal is connected to the positve battery terminal it has 1.50 V. If the terminal is connected to the negative battery terminal it has 0.00 V.,
626,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,They are not connected.,
627,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,i dont know,
628,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage difference,
629,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage reading will be more if it is connected to a positive terminal than if it is connected to a negative termninal,
630,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,tell me the answer,
631,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The voltage reading is the difference,
632,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,Voltage reading shows the gap,
633,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,Voltage measures the difference in electrical state between them,
634,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,One is positive and one is negative.,
635,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,They are in the same electrical state.,
636,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,They are connected to the negative terminal.,
637,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage reading shows the electrical states,
638,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the value of the measurement indicates the electrical states,
639,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,one is positive. one is negative,
640,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the number will be 0 if they are the same electrical state.,
641,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the value of the electrical state tells us if they are different states or the same state,
642,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage is the difference between the electrical states,
643,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The positive electical state must be put on the correct side to get a proper reading,
644,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"If the meter is put in the wrong place, it will read the opposite electrical states.",
645,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,Tehr,
646,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the difference in the electrical states and the two terminals gives the voltage readings,
647,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,they are the same voltage.,
648,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,i dont know.,
649,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the value between the ow terminals are the same.,
650,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The voltage reading is determined by the terminals and their electrical states.,
651,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The voltage reading is determined by whether the electrical state is positive or negative.,
652,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The value of the measurement indicates whether the electrical state is positive or negative.,
653,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,it determines whether they are connected,
654,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,it measures the voltage to determine wheter the terminals are connected to one another,
655,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage reading is the difference between two terminals,
656,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,i still dont know,
657,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,always the same,
658,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,volts are the same,
659,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage reading will correspond with their electrical state,
660,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the location of the terminals will correspond with their electrical state,
661,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the value of the measurement indicated if it is connected to the postive or negative terminal,
662,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,it is a measure of the difference,
663,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The voltage reading between two terminals is a measure of the difference in electricity,
664,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage reading is the difference between the two terminals,
665,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The only difference is when there is a gap between the terminals.,
666,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,Whether the is a gap or not.,
667,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,They will always be the same,
668,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage reading will be the same no matter what the electrical state is,
669,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,voltage is the difference in the electrical states between the two terminals,
670,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"I don""t know.",
671,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"If the states are the same, voltage will be zero.",
672,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,There is a chemical reaction between the positive and negative terminals,
673,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,there will be a reading only if there is a positive and negative connection assuming that there is a battery,
674,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,1 and 2 will always have the same voltage as the negative terminal. And Terminals 5 and 6 will always have the same voltage as the positive terminal.,
675,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,If there is no gap the voltage is 1.5 volts and teh electrical state is active,
676,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,I do not know.,
677,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,whether or not they are connected,
678,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,they are different,
679,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"A positive reading equals different electrical states, no reading equals same electrical states",
680,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,it is 0.,
681,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,they both have the same electrical reading.,
682,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The terminal.,
683,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage is the difference between 2 terminals electrical state on a battery,
684,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,?/,
685,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,They are divided into positive and negative terminals.,
686,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The difference in power between the two terminals.,
687,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,if the voltage reading is 0 volts then the bulb is not on,
688,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,all or nothing,
689,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,1.5 volts,
690,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage reading measures the difference between two terminals and their electrical states.,
691,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the voltage reading is the difference between the two terminals.,
692,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,the same,
693,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,When the electrical states are the same then the voltage reading is 0. When the electrical states differ then the voltage reading does not equal zero.,
694,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The voltage reading of the two terminal is dependant on the power source that in on their closed circuit.,
695,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,If they are in a closed circuit they will have both a positive and negative state if not it depends where the gap is to determine if the staes will be the same or different.,
696,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"I don""t know",
697,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,Voltage measures the difference in the electrical state of both terminals.,
698,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"If the terminals are connected, then their electrical states will be the same.",
699,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"the voltage reading will be 0 if it is connected to the positve terminal, but 1.5 if it is not.",
700,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,The relationship is that they are different depending on whether or not they are connected to the positive or negative battery terminal.,
701,VOLTAGE_ELECTRICAL_STATE_DISCUSS_Q,What is the relationship between the voltage reading between two terminals and their electrical states?,"If the voltage reading is >0, they are in different states. If they have a voltage reading of 0, they are in the same state.",
702,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the reading of the multimeter changes,
703,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the voltage would change,
704,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",0 v,
705,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the meter reads that it has 0 V,
706,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",there is a change in voltage,
707,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",There will be a difference between voltage.,
708,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",There will be an electrical state change between two terminals.,
709,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",there will be a change in voltage between two terminals.,
710,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the multimeter measures 0 volts,
711,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",where the voltage changes,
712,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",there is a change in the voltage.,
713,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the voltage indicates the place where an electrical state changes due to a damaged bulb,
714,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",voltage indicates the place where an electrical state changes from non-zero to zero,
715,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",there would be 0.00 v,
716,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",there would be a reading of 0.00 v between the positive battery terminal and the bulb terminal.,
717,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",there is a change in voltage between the battery terminal and the bulb terminal.,
718,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the voltage reads 0.00 v,
719,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",0.00 v,
720,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the voltage is 0,
721,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",because the voltage will be 0,
722,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the voltage reading changes from 0 V to 1.5 V,
723,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",You have found the burned out bulb when the voltage reading changes.,
724,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",by measuring the voltage,
725,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the voltage will indicate where the electrical state has changed due to the damaged bulb,
726,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",by testing the voltage,
727,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",read the voltage,
728,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",l,
729,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",You would have a voltage measurement.,
730,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",There would be a measurement of voltage.,
731,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",There would be a voltage reading where the bulb is burned out.,
732,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",There is a change in electrical states.,
733,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",reading would be zero,
734,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",voltage would be 0,
735,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the voltage shows 0.00v on the meter,
736,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the voltage shows 0 in the meter that is connected to the terminal,
737,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",there is a change in voltage on the meter from the terminals,
738,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",there would be a voltage reading,
739,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the voltage would not be 0,
740,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",there would be a change in voltage,
741,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the multimeter reads a voltage of 0 v,
742,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",dont know,
743,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the multimeter reads a change in electrical state,
744,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the multimeter reads a change in voltage to non-zero,
745,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When there is a difference in voltage.,
746,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the voltage changes,
747,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",i dont know,
748,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",it will be the first to have a 0.00 V level,
749,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",tell answer,
750,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",Yes.,
751,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",If the bulb was off.,
752,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",If the bulb indicating a break in the voltage.,
753,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the electrical state changes,
754,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the electrical state changed,
755,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the multimeter reads a non-zero,
756,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When you find the damaged bulb the multimeter will read something other than zero,
757,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the reading becomes 1.50 V,
758,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",?,
759,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the voltage number changes to 0.0 V,
760,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the voltage will be 0.,
761,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",i give up.,
762,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the voltage is 0,
763,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",The bulb has a bad connection,
764,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the volts would no longer be at zero,
765,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the bulb would work,
766,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",voltage would be 1.5,
767,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",is the voltage is 0.00 V,
768,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",if the voltage is 0.00 V,
769,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the reading jumps from 0 to 1.5 V,
770,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the reading on the multimeter is not 0.,
771,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When there is a change in the voltage,
772,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When you receive a meter reading of 0 volts.,
773,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",The voltage reading will be 0.,
774,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",It wont light up?,
775,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the multimeter reads a voltage other than 0v.,
776,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the reading on the voltmeter would no longer b3 0.0 volts,
777,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the voltage changes from 0 to 1.5,
778,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the voltage is greater than 0,
779,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",The meter will show a difference in voltage between the battery terminal and the light bulb terminal.,
780,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the multimeter jumps from 0 to 1.5 volts,
781,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When there is a change in voltage meter,
782,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the voltage measures 1.5 volts,
783,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the voltage changes from 1.5 to 0.0.,
784,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when you find voltage,
785,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the voltage would vary,
786,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When you register a voltage,
787,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",idk,
788,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when you find the terminal that is not connected,
789,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",Where there is a 0.0 voltage.,
790,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the voltage will change,
791,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",it has no voltage,
792,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when it reads 0,
793,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",You will get a reading of 0.00 voltage.,
794,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When I observe a change in the voltage.,
795,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the multimeter shows a difference in volts between the two terminals,
796,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when you have a charge other than 0 V,
797,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",when the voltages changes to zero at a specific terminal,
798,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?","the voltage would change, showing a gap where the burned out bulb is.",
799,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the voltage changes to 0.,
800,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the voltage jumps from 1.5 to 0.,
801,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the meter has a voltage reading other than 0.,
802,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",depeneding on if you hook the meter to the positive or negative side it would change to either have volts or not where ever the change is shows where the damaged bulb is.,
803,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",The meter will read 0 volts,
804,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",Voltage will be indicated on the voltmeter.,
805,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",When the voltage changes.,
806,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",the burned out light bulb would be when there is a difference inthe electrical states.,
807,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?",The voltage would be 0,
808,DESCRIBE_GAP_LOCATE_PROCEDURE_Q,"Finally, consider finding a burned out light bulb in a long string of lights. One approach would be to place one lead of the multimeter on a battery terminal and then move the other lead systematically, one light bulb terminal at a time. How would you know when you have found the burned out bulb?","when the voltage is greater than zero, or when the electrical state has changed.",
809,CLOSED_PATH_EXPLAIN,Explain your reasoning.,In these diagrams the bulbs are in closed paths,
810,CLOSED_PATH_EXPLAIN,Explain your reasoning.,both are closed circuits,
811,CLOSED_PATH_EXPLAIN,Explain your reasoning.,both have closed paths,
812,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Both 1 and 3 have closed circuits.,
813,CLOSED_PATH_EXPLAIN,Explain your reasoning.,1 and 3 have both a bulb and a battery in a closed circuit.,
814,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"In 1 and 3, they are complete circuits. The others are not fully closed circuits.",
815,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"In 1 and 3, they are closed paths. The others are not fully closed paths.",
816,CLOSED_PATH_EXPLAIN,Explain your reasoning.,bulb 1 and 3 will light up,
817,CLOSED_PATH_EXPLAIN,Explain your reasoning.,they will light up because they are on a closed path,
818,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"the bulb is in a closed path, meaning that it is connected to the battery.",
819,CLOSED_PATH_EXPLAIN,Explain your reasoning.,the bulb is in a closed path.,
820,CLOSED_PATH_EXPLAIN,Explain your reasoning.,The bulbs are in closed circuits,
821,CLOSED_PATH_EXPLAIN,Explain your reasoning.,The paths are closed for the bulbs,
822,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because all circuits are in a closed path.,
823,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because all three circuits are in a closed path.,
824,CLOSED_PATH_EXPLAIN,Explain your reasoning.,I chose 4 because neither component was in a closed path.,
825,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Diagram 4 will light up because there are no closed paths.,
826,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because,
827,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because the bulb is in a closed circuit,
828,CLOSED_PATH_EXPLAIN,Explain your reasoning.,The bulbs are in closed paths.,
829,CLOSED_PATH_EXPLAIN,Explain your reasoning.,they are closed circuits,
830,CLOSED_PATH_EXPLAIN,Explain your reasoning.,the path is closed,
831,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because it is across from the connection,
832,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because it is centered,
833,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Diagram 1 and have both a battery and light bulb in a closed path.,
834,CLOSED_PATH_EXPLAIN,Explain your reasoning.,they are closed paths,
835,CLOSED_PATH_EXPLAIN,Explain your reasoning.,closed path and there is a battery,
836,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Because they are all on closed path circuits.,
837,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Because they all have closed paths.,
838,CLOSED_PATH_EXPLAIN,Explain your reasoning.,They have closed circuits,
839,CLOSED_PATH_EXPLAIN,Explain your reasoning.,The paths are closed,
840,CLOSED_PATH_EXPLAIN,Explain your reasoning.,they are not in closed paths,
841,CLOSED_PATH_EXPLAIN,Explain your reasoning.,4,
842,CLOSED_PATH_EXPLAIN,Explain your reasoning.,bulb 4 will light up,
843,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"1 is a closed circut. 3 is a closed circut. In 5, the battery is closed and the light bulb is connected.",
844,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"In 1 and 3, both the light bulb and battery are in a closed path. In 5, the battery is in the closed path.",
845,CLOSED_PATH_EXPLAIN,Explain your reasoning.,The battery and light bulb are in a closed path in circuts 1 and 3.,
846,CLOSED_PATH_EXPLAIN,Explain your reasoning.,it is a closed circuit,
847,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"in diagrams 1,2, and 3 the lightbulbs are each closed circuits",
848,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"in diagrams 1,2 and 3 the lightbulbs each have closed paths",
849,CLOSED_PATH_EXPLAIN,Explain your reasoning.,the bulbs are all in a closed path,
850,CLOSED_PATH_EXPLAIN,Explain your reasoning.,They are in a closed circiut and receiving electricity.,
851,CLOSED_PATH_EXPLAIN,Explain your reasoning.,It is a closed path so the bulbs are receiving electricity and will light up.,
852,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because it is a closed path,
853,CLOSED_PATH_EXPLAIN,Explain your reasoning.,1 and 3 are both closed paths,
854,CLOSED_PATH_EXPLAIN,Explain your reasoning.,the voltage from the battery will reach the bulb and then travels back to the battery,
855,CLOSED_PATH_EXPLAIN,Explain your reasoning.,the battery in problem 1 will have the voltage reach the battery and have it travel back to itself,
856,CLOSED_PATH_EXPLAIN,Explain your reasoning.,In diagrams 1 and 3 the battery and bulb are in a closed path together.,
857,CLOSED_PATH_EXPLAIN,Explain your reasoning.,I think the bulb will light up because they are all in closed circuits.,
858,CLOSED_PATH_EXPLAIN,Explain your reasoning.,I think that the bulb will light up because they are in a closed path.,
859,CLOSED_PATH_EXPLAIN,Explain your reasoning.,the batteries and bulbs in circuit 1 and 3 are in closed circuits.,
860,CLOSED_PATH_EXPLAIN,Explain your reasoning.,the batteries and bulbs are connected by wires in circuit 1 and 3.they and closed paths.,
861,CLOSED_PATH_EXPLAIN,Explain your reasoning.,They are the only ones in a closed path.,
862,CLOSED_PATH_EXPLAIN,Explain your reasoning.,They are the only ones without gaps in a circuit.,
863,CLOSED_PATH_EXPLAIN,Explain your reasoning.,they all create a full circut,
864,CLOSED_PATH_EXPLAIN,Explain your reasoning.,closed paths exist,
865,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Paths are closed for both.,
866,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"Because in diagrams 1, 2, and 3 the bulb is in closed paths",
867,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"in circuits 1, 2, and 3, each has a battery in a holder, connected to a lightbulb in a holder recieving electricity from the battery",
868,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Circuits 1 and 3 are closed circuits and I believe the bulbs will light up. Circuit 2 has a bettery connected to a bulb in a closed circuit and I believe it will light up as well.,
869,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"In a closed path, the battery will ignite the bulb to light up.",
870,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"1, 2, 3, and 5.",
871,CLOSED_PATH_EXPLAIN,Explain your reasoning.,They are the only ones where the bulb and battery are both connected.,
872,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Both 1 and 3 are in a closed path with a battery,
873,CLOSED_PATH_EXPLAIN,Explain your reasoning.,diagrams 1 and 3 are the only two circuits in which both the battery and the bulb are in a closed path.,
874,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Both the bulbs in one and three are in a closed circuit.,
875,CLOSED_PATH_EXPLAIN,Explain your reasoning.,The bulbs are in a closed path.,
876,CLOSED_PATH_EXPLAIN,Explain your reasoning.,The bulb and the battery are in a closed circuit,
877,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because both the light bulb and the battery are in a closed circuit,
878,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Diagrams 1 and 3 are the only closed paths that contain both the blub and the battery.,
879,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Each battery has a wire connecting it to a bulb,
880,CLOSED_PATH_EXPLAIN,Explain your reasoning.,In diagrams 1 and 3 the battery and the bulb are in a closed path.,
881,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because they are both in closed paths,
882,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"The battery or bulb is in a closed path, so it should light up.",
883,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Both battery and bulb are in a closed circuit in diagrams 1 and 5,
884,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because both 1 and 3 have a closed circuit.,
885,CLOSED_PATH_EXPLAIN,Explain your reasoning.,both ppath 1 and path have both the batery and the bulb on a closed path,
886,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"1, and 3 are the only closed paths.",
887,CLOSED_PATH_EXPLAIN,Explain your reasoning.,All of them have closed circuits around the bulbs,
888,CLOSED_PATH_EXPLAIN,Explain your reasoning.,The bulb in 1 and 3 will recieve both a positive and negative charge in teh closed circuit.,
889,CLOSED_PATH_EXPLAIN,Explain your reasoning.,they are all closed circuits,
890,CLOSED_PATH_EXPLAIN,Explain your reasoning.,All components are closed in circuits 1 and 3.,
891,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Diagrams 1 and 3 are the only circuts that have both their bulbs and batteries in the same closed circut.,
892,CLOSED_PATH_EXPLAIN,Explain your reasoning.,the paths are closed to the bulb and the battery in diagrams 1 and 3,
893,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Only in circuits 1 and 3 are the bulb and the battery in closed paths,
894,CLOSED_PATH_EXPLAIN,Explain your reasoning.,they both contain closed circuits for both the battery and the light bulb,
895,CLOSED_PATH_EXPLAIN,Explain your reasoning.,Bulb 1 is in a closed path and bulb 2 is in a closed path connected with a wire and bulb 3 is in a closed path and bulb 5 is in a closed path connected with a wire.,
896,CLOSED_PATH_EXPLAIN,Explain your reasoning.,In 1 and 3 the battery and bulb are in a closed circuit,
897,CLOSED_PATH_EXPLAIN,Explain your reasoning.,because they are the only circuits with closed paths.,
898,CLOSED_PATH_EXPLAIN,Explain your reasoning.,1 is a closed path. 3 is a closed path.,
899,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"It looks to me that only one contact is being connected to the ""-"" on the battery. The bulb and the battery""s other contacts are not on a closed path.",
900,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"both the battery and the bulb are closed in diagram 1 and 3, while the others have one or more open circuits.",
901,CLOSED_PATH_EXPLAIN,Explain your reasoning.,The circuits are closed,
902,CLOSED_PATH_EXPLAIN,Explain your reasoning.,The components in both diagrams are complete.,
903,CLOSED_PATH_EXPLAIN,Explain your reasoning.,1 and 3 are both in closed circuits.,
904,CLOSED_PATH_EXPLAIN,Explain your reasoning.,In both 4 and 5 the bulb is open.,
905,CLOSED_PATH_EXPLAIN,Explain your reasoning.,"I feel like if the circuit is open, like in diagrams 2 and 4, then the bulbs are able to connect to the batteries to light up. If the circuit is closed, then the passageway is closed off from the battery to the bulb, so there is no connection able to be made.",
906,CLOSED_PATH_EXPLAIN,Explain your reasoning.,both the bulb and the battery must be in a closed path,
907,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because bulb b and c will not be contained in a closed path with the battery,
908,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"there is no closed path that contains the battery, bulb b, and bulb c",
909,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Because they are connected,
910,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,they are within the same path,
911,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb b and bulb c are both contained in the same path as bulb,
912,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,ki,
913,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because bulbs b and c are no longer contained in a closed path with the battery.,
914,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because damaged bulb a creates a gap,
915,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb a creates a gap and makes an open path,
916,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb a is contained in a closed circuit with the battery,
917,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because bulb A creates a gap in the closed path.,
918,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,If bulb a is damaged it creates a gap,
919,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"if bulb a is damaged, bulb a creates a gap in the path",
920,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb a creates a gap and bulbs b and c can not light,
921,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulbs b and c are in the same path.,
922,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb a is not in the same path of bulbs b and c.,
923,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb a is in the same path of bulbs b and c.,
924,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb B and bulb c were on the same path as bulb A.,
925,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,All are on the same path.,
926,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb B and bulb C are contained in an open path.,
927,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because the terminals were the same,
928,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,the battery is in the same connection as the bulb,
929,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,the battery is contained in the same terminal as the bulb,
930,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulbs b and c are not contained in a closed path with the battery,
931,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,they are all contained in a closed path,
932,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,they are not contained in a closed path,
933,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,the battery is contained in a open path,
934,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,there is a gap between the battery at bulb a,
935,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,l,
936,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb a contains a closed path to the battery,
937,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb B and Bulb C and the battery are not in a closed path.,
938,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"bulb""s B and C are in the same path",
939,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"Bulb B and C are in Bulb A""s path",
940,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,i do not know,
941,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,they are in the path of the battery,
942,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,hey,
943,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,there is a gap in the path,
944,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because bulb a is contained in the closed path,
945,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb a creates a gap,
946,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb a is contained in the closed path,
947,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,open path,
948,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,open circuit,
949,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"bulbs A, B, and C are in a closed path",
950,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"bulbs a, b and c are in a closed path with the battery",
951,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because bulbs b and c are in a closed path with the battery,
952,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,They are all on the same path,
953,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,A is on the same path with B and C,
954,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because b and c are not on a closed path with the battery,
955,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb A is contained in the same closed path as bulbs C and B as well as the battery,
956,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,tell answer,
957,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb A creates a gap in the path between Bulbs B and C and the battery,
958,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb B and C are no longer contained in a closed path with the battery.,
959,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb a created a gap,
960,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,there is no closed path,
961,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,the bulbs have no closed paths,
962,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,there are no closed paths with the battery,
963,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because they are not in a closed path with the battery,
964,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulbs b and c are not in a closed path with the battery is bulb a is damaged.,
965,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"if bulb A is damaged, bulb B and bulb C are not in a closed path with the battery.",
966,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,There will be a gap at bulb A,
967,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,There will be a gap in the battery at bulb A,
968,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,The battery will no longer have a closed path,
969,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,No longer have a closed path,
970,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,damaging bulb a creates a gap.,
971,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,i give up.,
972,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,there is not a closed path that contains the battery and bulb b and bulb c,
973,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,the damaged bulb a creates a gap,
974,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,there is not a path to the battery,
975,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,the circut is open,
976,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because buld B and C will not be in a closed path with the battery,
977,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb b and bulb c are not contained in closed paths with the battery,
978,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"because bulb A affects bulbs B and C""s paths",
979,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb A is on the same closed path as bulb B and C,
980,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,the battery is on the same closed path as bulb A,
981,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,the battery is on the same closed path within all the bulbs,
982,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Because damaged bulb a creates a gap in the path.,
983,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"damaged bulb a creates a gap in the path, so bulbs b and c are no longer contained in a closed path with the battery.",
984,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,They are connected to the same path as A.,
985,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,There is a gap in the closed circuit,
986,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,they opperate on the same path,
987,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,they are on the same closed path with the battery as bulb A,
988,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,there is a gap in the circuit, they are no longer connected to the battery source
989,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Because when A is out it breaks the closed circuit,
990,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,It is on the path with the battery,
991,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,They were still contained on a closed path to the battery,
992,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because b and c are both in series with a and if a circuit is in a series then every bulb needs to work to make the series work,
993,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"Bulb A created a gap in the path, and bulb B and C were no longer in the same path with a battery",
994,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulbs b and c are no longer in a closed circuit with the battery,
995,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,There was no closed path between the bulbs and the battery.,
996,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,creates gap,
997,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,they are no longer in a closed path,
998,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,It separates the circuit by opening a gap,
999,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,a is in the same pathway as b and c,
1000,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because it creates a gap in the path,
1001,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb A created a gap in the path.,
1002,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,they are not on seperate closed circuits with the battery,
1003,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,contained in the same path,
1004,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,GAP IN THE PATH TO THE BATTERY,
1005,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"Because they aren""t actually in separate paths.",
1006,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb A is no longer completing the circut.,
1007,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,bulb A creates a gap in the closed circuit to the battery,
1008,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Bulb A causes a gap,
1009,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because it creates a gap between the bulb and the battery,
1010,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,the damaged bulb a creates a gap in the path.,
1011,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,because it damages the complete circuit. Because the positive terminal cannot reach bulb c and b.,
1012,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,they were on the same closed path,
1013,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,There was a gap in the the closed path.,
1014,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Becuase bulbs B and C are on the ssame pathway as A.,
1015,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,it creates a gap so there are no closed paths,
1016,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Becuase it connects to the battery,
1017,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,Because Bulb A puts a gap in the path connecting both terminals of the battery.,
1018,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"because if bulb A is burned out, then bulbs B and C are no longer in a closed path.",
1019,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,They do not have a direct contained path to the battery,
1020,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,"Because when bulb A is burned out, it creates a gap and then bulbs B and C are no longer contained in a closed path to the battery.",
1021,HYBRID_BURNED_OUT_WHY_Q1,Why do both bulbs B and C go out when bulb A is burned out?,that creates a gap in the path,
1022,BURNED_BULB_SERIES_Q2,Why did it happen?,because there was a gap in the path,
1023,BURNED_BULB_SERIES_Q2,Why did it happen?,bulbs b and c were not contained in a closed path,
1024,BURNED_BULB_SERIES_Q2,Why did it happen?,because a damaged bulb creates a gap in the path,
1025,BURNED_BULB_SERIES_Q2,Why did it happen?,bulb a was damaged. bulb a caused a gap in the path. bulbs b and c were no longer in a closed path with the battery.,
1026,BURNED_BULB_SERIES_Q2,Why did it happen?,because it created a gap in the connnection,
1027,BURNED_BULB_SERIES_Q2,Why did it happen?,because lightbulb a created a gap in the connnection,
1028,BURNED_BULB_SERIES_Q2,Why did it happen?,becasue there was a gap created in the circuit.,
1029,BURNED_BULB_SERIES_Q2,Why did it happen?,the path had a gap,
1030,BURNED_BULB_SERIES_Q2,Why did it happen?,there was a gap in the path.,
1031,BURNED_BULB_SERIES_Q2,Why did it happen?,because it created a gap.,
1032,BURNED_BULB_SERIES_Q2,Why did it happen?,because there was a gap.,
1033,BURNED_BULB_SERIES_Q2,Why did it happen?,because the circuit was open,
1034,BURNED_BULB_SERIES_Q2,Why did it happen?,the switches will be on closed paths,
1035,BURNED_BULB_SERIES_Q2,Why did it happen?,the switch is contained in an open path,
1036,BURNED_BULB_SERIES_Q2,Why did it happen?,There was a gap in the circuit.,
1037,BURNED_BULB_SERIES_Q2,Why did it happen?,because it was open path,
1038,BURNED_BULB_SERIES_Q2,Why did it happen?,because bulb a was in a open path,
1039,BURNED_BULB_SERIES_Q2,Why did it happen?,because there was a gap,
1040,BURNED_BULB_SERIES_Q2,Why did it happen?,The path was no longer closed.,
1041,BURNED_BULB_SERIES_Q2,Why did it happen?,there is a gap in the path,
1042,BURNED_BULB_SERIES_Q2,Why did it happen?,the break in the closed path with the battery,
1043,BURNED_BULB_SERIES_Q2,Why did it happen?,the closed path and the battery,
1044,BURNED_BULB_SERIES_Q2,Why did it happen?,no path,
1045,BURNED_BULB_SERIES_Q2,Why did it happen?,it created a gap,
1046,BURNED_BULB_SERIES_Q2,Why did it happen?,bulb a being burnt out created a gap in the path,
1047,BURNED_BULB_SERIES_Q2,Why did it happen?,open path,
1048,BURNED_BULB_SERIES_Q2,Why did it happen?,"bulbs a, b and c are contained in a closed path with the battery",
1049,BURNED_BULB_SERIES_Q2,Why did it happen?,a gap was created in the closed path,
1050,BURNED_BULB_SERIES_Q2,Why did it happen?,a gap was created in the circuit,
1051,BURNED_BULB_SERIES_Q2,Why did it happen?,there was a gap in the circut,
1052,BURNED_BULB_SERIES_Q2,Why did it happen?,a b and c are in series,
1053,BURNED_BULB_SERIES_Q2,Why did it happen?,it created a gap in the path,
1054,BURNED_BULB_SERIES_Q2,Why did it happen?,lightbulb A created a gap in the path,
1055,BURNED_BULB_SERIES_Q2,Why did it happen?,Bulb B and C were no longer contained in a closed path with the battery,
1056,BURNED_BULB_SERIES_Q2,Why did it happen?,The damaged bulb made the path incomplete,
1057,BURNED_BULB_SERIES_Q2,Why did it happen?,the damaged bulb made the circuit incomplete,
1058,BURNED_BULB_SERIES_Q2,Why did it happen?,there is a gap in the path to the battery,
1059,BURNED_BULB_SERIES_Q2,Why did it happen?,there is a gap,
1060,BURNED_BULB_SERIES_Q2,Why did it happen?,because there was a gap in the circuit,
1061,BURNED_BULB_SERIES_Q2,Why did it happen?,the damaged bulb made a gap in the closed path.,
1062,BURNED_BULB_SERIES_Q2,Why did it happen?,Because it caused a gap,
1063,BURNED_BULB_SERIES_Q2,Why did it happen?,Bulb A caused a gap,
1064,BURNED_BULB_SERIES_Q2,Why did it happen?,bulb a created a gap in the path.,
1065,BURNED_BULB_SERIES_Q2,Why did it happen?,The path was not closed,
1066,BURNED_BULB_SERIES_Q2,Why did it happen?,bulb a created a gap in the path to the battery,
1067,BURNED_BULB_SERIES_Q2,Why did it happen?,a gap was created by bulb a,
1068,BURNED_BULB_SERIES_Q2,Why did it happen?,broke the closed path,
1069,BURNED_BULB_SERIES_Q2,Why did it happen?,broken bulb a caused path to open,
1070,BURNED_BULB_SERIES_Q2,Why did it happen?,because the circuit is damaged,
1071,BURNED_BULB_SERIES_Q2,Why did it happen?,bulb a is damaged and that effects bulbs b and c,
1072,BURNED_BULB_SERIES_Q2,Why did it happen?,because damaged bulb A created a gap in the path,
1073,BURNED_BULB_SERIES_Q2,Why did it happen?,All the bulbs are on the same closed path with the battery.,
1074,BURNED_BULB_SERIES_Q2,Why did it happen?,I dont know,
1075,BURNED_BULB_SERIES_Q2,Why did it happen?,the damaged bulb created a gap in the closed circuit,
1076,BURNED_BULB_SERIES_Q2,Why did it happen?,there was a gap in the circuit,
1077,BURNED_BULB_SERIES_Q2,Why did it happen?,It broke the circuit,
1078,BURNED_BULB_SERIES_Q2,Why did it happen?,Broke the path,
1079,BURNED_BULB_SERIES_Q2,Why did it happen?,There was a gap in the path between bulbs B and C and the battery.,
1080,BURNED_BULB_SERIES_Q2,Why did it happen?,because there is not a closed circuit,
1081,BURNED_BULB_SERIES_Q2,Why did it happen?,The damaged bulb created a gap in the path,
1082,BURNED_BULB_SERIES_Q2,Why did it happen?,because a damaged bulb a creates a gap in the path,
1083,BURNED_BULB_SERIES_Q2,Why did it happen?,There was a gap.,
1084,BURNED_BULB_SERIES_Q2,Why did it happen?,Bulb A burned out and caused a gap,
1085,BURNED_BULB_SERIES_Q2,Why did it happen?,there were gaps,
1086,BURNED_BULB_SERIES_Q2,Why did it happen?,because that creates a gapp in the circuit,
1087,BURNED_BULB_SERIES_Q2,Why did it happen?,"Because when one bulb goes, the rest of the bulbs go out.",
1088,BURNED_BULB_SERIES_Q2,Why did it happen?,they are all on the same path,
1089,BURNED_BULB_SERIES_Q2,Why did it happen?,gap in the circuit,
1090,BURNED_BULB_SERIES_Q2,Why did it happen?,break in the path,
1091,BURNED_BULB_SERIES_Q2,Why did it happen?,The were in the same circuit.,
1092,BURNED_BULB_SERIES_Q2,Why did it happen?,Bulb A was no longer completing the circut.,
1093,BURNED_BULB_SERIES_Q2,Why did it happen?,it created a gap in the circuit,
1094,BURNED_BULB_SERIES_Q2,Why did it happen?,"There wasn""t a closed path anymore",
1095,BURNED_BULB_SERIES_Q2,Why did it happen?,ther is a gap,
1096,BURNED_BULB_SERIES_Q2,Why did it happen?,the damaged bulb a created a gap in the path.,
1097,BURNED_BULB_SERIES_Q2,Why did it happen?,because the closed circuit had been damaged.,
1098,BURNED_BULB_SERIES_Q2,Why did it happen?,Because bulb A caused a gap.,
1099,BURNED_BULB_SERIES_Q2,Why did it happen?,becuase the closed path was opened by a broken bulb A.,
1100,BURNED_BULB_SERIES_Q2,Why did it happen?,it created a short circuit and n open path,
1101,BURNED_BULB_SERIES_Q2,Why did it happen?,It damaged the path,
1102,BURNED_BULB_SERIES_Q2,Why did it happen?,The closed circuit was interrupted by a gap.,
1103,BURNED_BULB_SERIES_Q2,Why did it happen?,because there was a gap in the circuit at bulb A.,
1104,BURNED_BULB_SERIES_Q2,Why did it happen?,there was a gap,
1105,BURNED_BULB_SERIES_Q2,Why did it happen?,Because the damaged bulb A created a gap for bulbs B and C to get to the battery.,
1106,BURNED_BULB_SERIES_Q2,Why did it happen?,"because bulb A was damaged, a gap was created and the path was no longer closed",
1107,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,positive battery terminal is separated by a gap from terminal 2,
1108,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,there is a gap between terminal 2 and the positive terminal,
1109,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive battery is seperated by a gap from terminal 2,
1110,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The positive battery terminal is seperated by a gap from terminal 2,
1111,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,terminal 2 is connected to the negative battery terminal.,
1112,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive battery terminal is separated by a gap from terminal 2.,
1113,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The positive battery terminal is separated by a gap from terminal 2,
1114,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive battery terminal is separated by a gap from terminal 1.,
1115,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,"i don""t know.",
1116,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,Because the positive battery is seperated by a gap from terminal 2.,
1117,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The positive battery terminal is seperated by a gap from terminal 2.,
1118,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positivie battery terminal is seperated by a gap from terminal 2,
1119,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,Terminal 2 is not connected to the positive battery terminal.,
1120,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,there is no gap,
1121,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive battery is seperated by terminal 1,
1122,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,its seperated by the gap in ternam 1,
1123,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,termainal2,
1124,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,circuit was complete until gap,
1125,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,gap in bulb b,
1126,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,"I got a reading of 1.5 V on terminal 2 because the circuit was complete however there is a gap in bulb B, which explains why the rest of the terminals after 3 all showed 0 V readings",
1127,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the terminals are seperated by a gap,
1128,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,terminal two is connected to the negative battery terminal,
1129,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,There is a gap between the positive terminal and terminal 2,
1130,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,There was a gap between terminal 1 and the positive terminal.,
1131,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,There was a gap between terminal 2 and the positive terminal.,
1132,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive terminal is separated by a gap from terminal 1,
1133,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive terminal is separated by a gap from terminal 2,
1134,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the postive battery is seperated by a gap from terminal 2,
1135,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,Because the gap is after terminal 3,
1136,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,because,
1137,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,Because there is a gap after terminal 3,
1138,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,There is no gap at terminal 2,
1139,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive battery terminal is separated from terminal 1.,
1140,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the terminal is connected to the battery.,
1141,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,terminal to is not connected to the battery.,
1142,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,positive battery terminal is seperated by a gap from terminal 1,
1143,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,positive and negative is seperate,
1144,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,terminal 2 is not connected to the positive terminal,
1145,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,because the positive terminal is separated by a gap from terminal 2,
1146,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The posotive battery terminal is seperated b a gap from terminal 2.,
1147,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,there is a gap,
1148,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The positive battery terminal is seperated by a gap from terminal 1.,
1149,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,"There""s a gap",
1150,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,for the same reason as one,
1151,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The positive battery terminal is separted by a gap from terminal 2,
1152,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,because there is a gap between the terminal 2 and the positive battery,
1153,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,it was seperated by a gap from teriminal 2,
1154,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive battery terminal is searated by a gap from terminal 2,
1155,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The positive terminal is working.,
1156,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The positive terminal is separated by a gap from terminal 1.,
1157,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,sperated by a gap in terminal 1,
1158,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive battery terminal is seperated by a gap from the bulb,
1159,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,Because it was attatched to the positive terminal!,
1160,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The positive batter terminal is seperated by a gap from terminal 2.,
1161,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,terminal 2 is connected to the negative battery terminal,
1162,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive battery terminal is sepearted by a gap from terminal 2,
1163,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,the positive battery is seperated by a gap from terminal 2.,
1164,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,Because there are not gaps in the system from the - to the bulb then from terminal 2 to the + of the battery.,
1165,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,Terminal 2 was connected to the negative terminal,
1166,VOLTAGE_GAP_EXPLAIN_WHY2,Explain why you got a voltage reading of 1.5 for terminal 2 and the positive terminal.,The positive battery terminal is seperated by a ga from Terminal 2.,
1167,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it acts in the same manner,
1168,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,its acts the same,
1169,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,the bulb creates a gap and so does an open switch,
1170,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it acts the same way,
1171,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they both create a gap in the path,
1172,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,a damaged bulb creates a gap. an open switch creates in incomplete path.,
1173,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,a damaged bulb creates a gap while an open switch creates a incomplete path.,
1174,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,a damaged bulb creates a gap while and open switch creates an incomplete circuit,
1175,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,An open switch causes an incomplete circuit,
1176,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,A damaged bulb and open switch created gaps in the path.,
1177,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they are the same,
1178,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,the connect the circuit.,
1179,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they create gaps in the circuit.,
1180,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,Same effect,
1181,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,Both create a gap in the path,
1182,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it creates a gap.,
1183,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it is a gap in the circuit.,
1184,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They both have opened paths.,
1185,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They both have gaps.,
1186,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,both dont allow for a closed path,
1187,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,both create a gap,
1188,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,It acts the same.,
1189,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,It is the same.,
1190,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,A damaged bulb is the same as an open switch.,
1191,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,A damaged bulb and an open switch are the same.,
1192,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,creates a gap,
1193,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,open path,
1194,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it creates a gap and makes a open path,
1195,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it is the same. they both create gaps,
1196,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,the bulb and the switch create gaps,
1197,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,It is very similar.,
1198,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They both create a gap in the circuit.,
1199,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it is like an open switch,
1200,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they are both open,
1201,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,each will create an open path in circuit,
1202,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,the same,
1203,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it is the same,
1204,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they both create a gap,
1205,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,both can be gaps in a circuit,
1206,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,Same.,
1207,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,same,
1208,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it acts the same,
1209,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,both a damaged bulb and open switch create a gap in the path,
1210,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,It has the same effect,
1211,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They both open the path,
1212,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,It creates a gap in the path.,
1213,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,It also prevents the bulb from being on.,
1214,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,A damaged bulb prevents other bulbs from being on.,
1215,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,A switch causes an incomplete path.,
1216,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they both create gaps,
1217,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they are the same.,
1218,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,Their results are similar.,
1219,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They both create a gap.,
1220,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,both create gaps.,
1221,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,a damaged bulb has the same effect of an open switch,
1222,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,a damaged bulb is the same as an open switch,
1223,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,a damaged bulb is like an open switch,
1224,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,the have the same effect on the circuit,
1225,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,both a damaged bulb and an open switch creates a gap in the circuit,
1226,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,same thing,
1227,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,both function the same and interfer with the bulb turning on,
1228,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they both creat gaps in the path,
1229,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,It has the same effect.,
1230,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They both create gaps.,
1231,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,I dont know,
1232,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it is very similar,
1233,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they behave identically,
1234,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They are similar.,
1235,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,The effect is the same. They both create a gap.,
1236,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,"It would not appear to be damaged, because an open switch creates a gap.",
1237,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They both create a gap in the circuit,
1238,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They both have a gap.,
1239,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they both have the ability to create gaps.,
1240,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,"same result, but a switch can be closed",
1241,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,It works the same way.,
1242,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,the switch can close and the gap would be gone but the a damaged bulb will always have a gap in the circuit,
1243,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,A damaged bulb creates a gap in the path. An open switch creates a gap in the path.,
1244,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they both act the same way,
1245,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,"Open switch is just creating a gap, nothing is being damaged.",
1246,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They have an identical impact on the circut.,
1247,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,"it acts in the same way, creating a gap",
1248,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,a damaged bulb has the same effect as an open switch.,
1249,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,they both damage the circuit,
1250,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,It creates an open gap.,
1251,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,The damabed bulb and the open switch disrupt the flow of the current.,
1252,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They are functionally the same.,
1253,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,the damaged bulb does the same thing as an open switch by creating a gap but the damaged bulb cannot fix its self to recreate the current as a switch can turn the current on and off.,
1254,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,"The both don""t work",
1255,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,Both a damaged bulb and open switch will disconnect the circuit.,
1256,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,They are the same because they create a gap.,
1257,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,"An open switch means a closed pathway, where as a damaged bulb means a gap, and they both cause the circuit not to work properly.",
1258,DAMAGED_BULB_SWITCH_Q,How does a damaged bulb compare to an open switch?,it creates the same effect,